Results 191 to 200 of about 11,540 (263)
Hollow-core antiresonant THz waveguides based on polymer- and metal-coated sapphire tube. [PDF]
Katyba GM +9 more
europepmc +1 more source
A picopatch in a plasmonic nanocavity confines the electromagnetic energy to tiny effective volumes, close to 1nm3, leading to extreme electric field enhancements. Furthermore, a clear signature of strong coupling between the picopatch modes and other modes of the structure is obtained, which strongly modifies the far‐field response. ABSTRACT Plasmonic
Jinna He +6 more
wiley +1 more source
Ultraviolet-C to mid-infrared supercontinuum generation in periodically poled lithium tantalate waveguides. [PDF]
Xiong H +10 more
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Grating based interferometric devices on a silicon photonic platform. [PDF]
Mikhail TJG, Swillam SM, Swillam MA.
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Poling-free integrated second-order nonlinear optics with evaporated organic thin films. [PDF]
Thériault PL +3 more
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Exact wave structures in magneto-optic soliton channels governed by Kudryashov-type coupled Schrödinger dynamics. [PDF]
Tarek A, Ahmed HM, Badra N, Samir I.
europepmc +1 more source
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Optical Waveguide Refractometers
2005In this chapter we have illustrated a new method for the determination of the refractive index of liquid samples, based on Cerenkov second harmonic generation from suitable planar waveguides. The method allows the determination of the refractive index in the near infrared by detection in the visible.
MARANGONI, MARCO ANDREA +2 more
openaire +3 more sources
Journal of Peptide Science, 2016
Small‐scale optical devices, designed and fabricated onto one dielectric substrate, create integrated optical chip like their microelectronic analogues. These photonic circuits, based on diverse physical phenomena such as light–matter interaction, propagation of electromagnetic waves in a thin dielectric material, nonlinear and electro‐optical effects,
Amir, Handelman +3 more
openaire +2 more sources
Small‐scale optical devices, designed and fabricated onto one dielectric substrate, create integrated optical chip like their microelectronic analogues. These photonic circuits, based on diverse physical phenomena such as light–matter interaction, propagation of electromagnetic waves in a thin dielectric material, nonlinear and electro‐optical effects,
Amir, Handelman +3 more
openaire +2 more sources

